Real-world XR innovation
Real-world XR innovation
Validating IRIS-XR technologies through real-world applications in healthcare, aviation, and automotive innovation.
+20
end users
3
strategic sectors
1
XR innovation
Mental Health Rehabilitation through
Adaptive Mixed Reality
Pilot 1
Location
Sueca, Valencia
(Spain)
Lead Partner
Instituto Tecnológico
de Informática
Sector
Mental Healthcare
The technologies developed within IRIS-XR will be validated through three real-world pilots in mental healthcare, aviation training, and automotive design. These demonstrations will showcase how advanced XR technologies can improve accessibility, performance, safety, and collaboration across diverse professional and societal domains.
Key Technologies
Mixed Reality (MR)
Eye tracking and gesture recognition
Biomarkers and biosensors
Gamified therapeutic environments
Adaptive user interfaces
Expected Impact
Improved user engagement and accessibility
Enhanced therapeutic effectiveness
Reduced cognitive load
Better support for diverse cognitive and motor abilities
Next-Generation XR Headsets for
Professional Flight Simulation
Pilot 2
Location
Berg, Munich
(Germany)
Lead Partner
Reiser Simulation
and Training GmbH
Sector
Civil and Military
Aviation
This pilot demonstrates how advanced XR headsets can transform professional flight training by delivering highly realistic, cost-efficient, and environmentally sustainable simulation experiences.
Working with professional flight simulators used in both civil and military aviation, IRIS-XR integrates a new generation of XR goggles featuring ultra-low latency interaction, high-resolution displays, precision eye tracking, and AI-driven multimodal interfaces. The objective is to improve pilot training realism while supporting Competency-Based Training and Assessment (CBTA) methodologies.
The pilot will evaluate the technology across different flight and synthetic training devices, enabling realistic cockpit interaction through gaze, hand gestures, and natural multimodal controls. By replacing a greater proportion of real flight hours with immersive simulator-based training, the solution contributes to reduced operational costs, lower emissions, and increased training accessibility.
The demonstration highlights how XR technologies can strengthen flight safety, improve learning outcomes, and support Europe’s ambitions for more sustainable aviation.
Key Technologies
High-precision retina and gaze tracking
AI-driven multimodal interaction
Natural hand gesture recognition
High-resolution XR displays (>50 ppd)
Ultra-low latency interaction (<10 ms)
Expected Impact
More realistic pilot training
Reduced environmental footprint
Improved training performance and usability
Lower simulator operating costs
Increased accessibility of advanced training systems
Automotive Design Reviews
with Extended Reality
Pilot 3
Location
Stuttgart
(Germany)
Lead Partner
Mercedes-Benz AG
Sector
Automotive Design
and Engineering
IRIS-XR will demonstrate how advanced XR technologies can redefine collaborative automotive design reviews by enabling natural interaction with high-fidelity digital vehicle models.
The pilot focuses on virtual and mixed reality reviews used throughout the vehicle development process, including concept evaluations, ergonomic assessments, quality inspections, and certification-related analyses. Designers, engineers, and decision-makers will be able to collaboratively interact with digital twins that faithfully reproduce the visual quality, scale, and appearance of physical prototypes.
A key objective is to enable intuitive, calibration-free interaction through reliable gesture recognition and accurate eye tracking. This allows participants to communicate naturally within collaborative design sessions, whether working together in the same location or remotely.
The pilot will validate three review scenarios: VR interior reviews, VR exterior reviews, and Mixed Reality exterior reviews. By replacing physical prototypes with highly accurate digital representations, IRIS-XR aims to accelerate development cycles, reduce costs, and improve collaboration across distributed teams.
Key Technologies
Digital twins
High-precision eye tracking
Natural gesture recognition
High-resolution XR displays
Collaborative VR and MR environments
Expected Impact
More efficient design review processes
Reduced dependence on physical prototypes
Enhanced collaboration among distributed teams
Improved decision-making through immersive visualisation
Greater adoption of XR technologies in automotive engineering
Latest news
01-05-2026
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01-05-2026
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